Wood Colorization through Pressure Treating: The Potential of Extracted Colorants from Spalting Fungi as a Replacement for Woodworkers’ Aniline Dyes
Abstract
1. Introduction
2. Experimental Section
2.1. Wood Selection
2.2. Fungal Selection
2.3. Colorants
2.3.1. Isolation
2.3.2. Concentration
2.3.3. Application onto Wood
2.3.4. Assessment
3. Results and Discussion
3.1. External


| Wood | Method | Color | External Delta E* | Internal Delta E* | Internal % Coverage |
|---|---|---|---|---|---|
| Ash | aniline dye | blue-green | 144.84 (A) | 53.17 (A) | 16.00 (A) |
| liquid | red | 168.89 (A) | 25.59 (B) | 0 (B) | |
| blue-green | 22.68 (A) | 18.16 (B) | 0 (B) | ||
| yellow | 16.63 (A) | 18.89 (B) | 0 (B) | ||
| wood-agar | red | 100.40 (A) | 1.57 (B) | 0 (B) | |
| blue-green | 100.40 (A) | 11.22 (B) | 0 (B) | ||
| yellow | 23.52 (A) | 18.89 (B) | 0 (B) | ||
| Chinkapin | aniline dye | blue-green | 178.24 (A) | 35.68 (A) | 58.67 (A) |
| liquid | red | 128.94 (ABC) | 10.18 (CD) | 0 (B) | |
| blue-green | 38.95 (E) | 11.84 (CD) | 0 (B) | ||
| yellow | 64.09 (CDE) | 8.81 (D) | 0 (B) | ||
| wood-agar | red | 134.84 (AB) | 27.06 (BC) | 0 (B) | |
| blue-green | 110.52 (BCD) | 27.06 (AB) | 0 (B) | ||
| yellow | 53.38 (DE) | 5.38 (D) | 0 (B) | ||
| Cottonwood | aniline dye | blue-green | 282.86 (A) | 57.47 (B) | 58.67 (A) |
| liquid | red | 264.71 (A) | 0.76 (D) | 0 (B) | |
| blue-green | 64.71 (A) | 2.39 (D) | 0 (B) | ||
| yellow | 368.13 (A) | 97.24 (A) | 0 (B) | ||
| wood-agar | red | 131.78 (A) | 29.62 (C) | 2.9 (B) | |
| blue-green | 99.47 (A) | 36.61 (BC) | 0 (B) | ||
| yellow | 45.49 (A) | 1.43 (D) | 0 (B) | ||
| Lodgepole pine | aniline dye | blue-green | 474.46 (A) | 65.26 (A) | 55.33 (A) |
| liquid | red | 378.21 (B) | 4.69 (C) | 8.67 (B) | |
| blue-green | 87.95 (D) | 2.39 (C) | 0 (B) | ||
| yellow | 185.69 (C) | 3.79 (C) | 0 (B) | ||
| wood-agar | red | 142.78 (CD) | 16.94 (B) | 0 (B) | |
| blue-green | 113.85 (D) | 24.94 (B) | 0 (B) | ||
| yellow | 182.58 (C) | 2.44 (C) | 0 (B) | ||
| Noble fir | aniline dye | blue-green | 558.15 (A) | 46.96 (A) | 52.33 (A) |
| liquid | red | 182.16 (B) | 4.28 (B) | 6.67 (B) | |
| blue-green | 61.95 (B) | 18.02 (B) | 0 (B) | ||
| yellow | 110.23 (B) | 5.84 (B) | 0 (B) | ||
| wood-agar | red | 202.50 (B) | 5.22 (B) | 0.83 (B) | |
| blue-green | 227.11 (B) | 6.34 (B) | 0 (B) | ||
| yellow | 160.88 (B) | 2.79 (B) | 8.57 (B) | ||
| Oregon maple | aniline dye | blue-green | 162.74 (BC) | 39.91 (A) | 39.33 (A) |
| liquid | red | 136.04 (BC) | 6.70 (B) | 0.67 (B) | |
| blue-green | 58.97 (C) | 6.44 (B) | 0 (B) | ||
| yellow | 70.05 (C) | 5.61 (B) | 0 (B) | ||
| wood-agar | red | 205.97 (AB) | 31.85 (A) | 0.57 (B) | |
| blue-green | 302.87 (A) | 30.76 (A) | 0 (B) | ||
| yellow | 57.28 (C) | 5.89 (B) | 3.67 (B) | ||
| Port orford cedar | aniline dye | blue-green | 415.10 (A) | 61.75 (A) | 60.00 (A) |
| liquid | red | 246.50 (A) | 0.95 (D) | 12.33 (B) | |
| blue-green | 55.0 (A) | 1.24 (D) | 0 (B) | ||
| yellow | 112.10 (A) | 1.73 (D) | 0 (B) | ||
| wood-agar | red | 187.10 (A) | 10.95 (C) | 4.3 (B) | |
| blue-green | 165.50 (A) | 21.62 (B) | 4.03 (B) | ||
| yellow | 306.10 (A) | 3.50 (D) | 9.33 (B) | ||
| Red alder | aniline dye | blue-green | 142.76 (BC) | 40.38 (B) | 0 (A) |
| liquid | red | 78.27 (C) | 8.59 (C) | 0 (A) | |
| blue-green | 78.27 (C) | 8.37 (C) | 0 (A) | ||
| yellow | 43.49 (C) | 11.92 (C) | 0 (A) | ||
| wood-agar | red | 259.61 (AB) | 57.68 (A) | 0 (A) | |
| blue-green | 318.11 (A) | 41.27 (B) | 0 (A) | ||
| yellow | 150.56 (ABC) | 5.61 (C) | 1.33 (A) | ||
| Sweet cherry | aniline dye | blue-green | 153.23 (B) | 90.35 (A) | 8.33 (A) |
| liquid | red | 63.87 (C) | 11.36 (BC) | 0 (B) | |
| blue-green | 45.34 (C) | 10.73 (BC) | 0 (B) | ||
| yellow | 32.11 (C) | 9.30 (C) | 0 (B) | ||
| wood-agar | red | 241.47 (A) | 94.77 (A) | 0 (B) | |
| blue-green | 193.19 (AB) | 53.88 (AB) | 0 (B) | ||
| yellow | 50.48 (C) | 20.73 (BC) | 0 (B) | ||
| Sugar maple | aniline dye | blue-green | 525.19 (A) | 52.94 (A) | 12.00 (B) |
| liquid | red | 158.52 (B) | 17.61 (BC) | 10.67 (B) | |
| blue-green | 49.53 (B) | 12.60 (CD) | 0 (C) | ||
| yellow | 29.53 (B) | 15.42 (CD) | 0 (C) | ||
| wood-agar | red | 218.02 (B) | 9.94 (D) | 0 (C) | |
| blue-green | 201.77 (B) | 12.43 (CD) | 0 (C) | ||
| yellow | 475.68 (A) | 23.10 (B) | 18.33 (A) |
3.2. Internal
3.3. Comparing Percent Coverage to CIE Lab Values
| Wood | Threshold (Delta E*) |
|---|---|
| ash | 54 |
| chinkapin | 36 |
| cottonwood | 58 |
| lodgepole pine | 66 |
| noble fir | 47 |
| Oregon maple | 40 |
| port orford cedar | 22 |
| red alder | NA |
| sweet cherry | 91 |
| sugar maple | 18 |
4. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
- Michaelsen, H.; Buchholz, R. Von Färben des Holzes. Holzbeizen von der Antike bis in die Gegenwart; Michael Imhof Verlag: Petersberg, EU, 2009. (In German) [Google Scholar]
- Blanchette, R.A.; Wilmering, A.M.; Baumeister, M. The use of green-stained wood caused by the fungus Chlorociboria in Intarsia masterpieces from the 15th Century. Holzforschung 1992, 46, 225–232. [Google Scholar]
- Robinson, S.C. Developing fungal pigments for “painting” vascular plants. Appl. Microbiol. Biotechnol. 2012, 93, 1389–1394. [Google Scholar] [CrossRef]
- Robinson, S.C.; Hinsch, E.; Weber, G.; Freitas, S. Method of extraction and resolubilization of pigments from Chlorociboria aeruginosa and Scytalidium cuboideum, two prolific spalting fungi. Coloration Technol. 2014, in press. [Google Scholar]
- Robinson, S.C.; Tudor, D.; Snider, H.; Cooper, P.A. Stimulating growth and xylindein production of Chlorociboria aeruginascens in agar-based systems. AMB Express 2012, 2. [Google Scholar] [CrossRef]
- Robinson, S.C.; Laks, P.E.; Turnquist, E.J. A method for digital color analysis of spalted wood using Scion Image software. Materials 2009, 2, 62–75. [Google Scholar]
- Von Arx, J.A.; Nilsson, T. Xylogone sphaerospora, a new ascomycete from stored pulpwood chips. Sven Bot Tidskr 1969, 63, 345–348. [Google Scholar]
- Sigler, L.; Carmichael, J.W. Taxonomy of Malbranchea and some other Hyphomycetes with arthroconidia. Mycotaxon 1976, 4, 349–488. [Google Scholar]
- Sigler, L.; Carmichael, J.W. Redisposition of some fungi referred to Oidium microspermum and a review of Arthrographis. Mycotaxon 1983, 18, 495–507. [Google Scholar]
- Wang, C.J.K.; Zabel, R.A. Identification Manual for Fungi from Utility Poles in the EasternUnited States; American Type Culture Collection: Rockville, MD, USA, 1999. [Google Scholar]
- Robinson, S.C.; Tudor, D.; Cooper, P.A. Wood preference by spalting fungi in urban hardwood species. Int. Biodeterior. Biodegradat. 2011, 65, 1145–1149. [Google Scholar] [CrossRef]
- PRA. Colour Consultancy. Available online: http://www.pra-world.com/technical_services/consultancy/colour (accessed on 27 April 2014).
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Robinson, S.C.; Hinsch, E.; Weber, G.; Leipus, K.; Cerney, D. Wood Colorization through Pressure Treating: The Potential of Extracted Colorants from Spalting Fungi as a Replacement for Woodworkers’ Aniline Dyes. Materials 2014, 7, 5427-5437. https://doi.org/10.3390/ma7085427
Robinson SC, Hinsch E, Weber G, Leipus K, Cerney D. Wood Colorization through Pressure Treating: The Potential of Extracted Colorants from Spalting Fungi as a Replacement for Woodworkers’ Aniline Dyes. Materials. 2014; 7(8):5427-5437. https://doi.org/10.3390/ma7085427
Chicago/Turabian StyleRobinson, Sara C., Eric Hinsch, Genevieve Weber, Kristina Leipus, and Daniel Cerney. 2014. "Wood Colorization through Pressure Treating: The Potential of Extracted Colorants from Spalting Fungi as a Replacement for Woodworkers’ Aniline Dyes" Materials 7, no. 8: 5427-5437. https://doi.org/10.3390/ma7085427
APA StyleRobinson, S. C., Hinsch, E., Weber, G., Leipus, K., & Cerney, D. (2014). Wood Colorization through Pressure Treating: The Potential of Extracted Colorants from Spalting Fungi as a Replacement for Woodworkers’ Aniline Dyes. Materials, 7(8), 5427-5437. https://doi.org/10.3390/ma7085427
